US10724586B2 - Movable tunnel braking system and passenger boarding bridge - Google Patents
Movable tunnel braking system and passenger boarding bridge Download PDFInfo
- Publication number
- US10724586B2 US10724586B2 US16/330,915 US201716330915A US10724586B2 US 10724586 B2 US10724586 B2 US 10724586B2 US 201716330915 A US201716330915 A US 201716330915A US 10724586 B2 US10724586 B2 US 10724586B2
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- US
- United States
- Prior art keywords
- tunnel
- brake
- wire rope
- hinged
- slot
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64F—GROUND OR AIRCRAFT-CARRIER-DECK INSTALLATIONS SPECIALLY ADAPTED FOR USE IN CONNECTION WITH AIRCRAFT; DESIGNING, MANUFACTURING, ASSEMBLING, CLEANING, MAINTAINING OR REPAIRING AIRCRAFT, NOT OTHERWISE PROVIDED FOR; HANDLING, TRANSPORTING, TESTING OR INSPECTING AIRCRAFT COMPONENTS, NOT OTHERWISE PROVIDED FOR
- B64F1/00—Ground or aircraft-carrier-deck installations
- B64F1/30—Ground or aircraft-carrier-deck installations for embarking or disembarking passengers
- B64F1/305—Bridges extending between terminal building and aircraft, e.g. telescopic, vertically adjustable
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D63/00—Brakes not otherwise provided for; Brakes combining more than one of the types of groups F16D49/00 - F16D61/00
- F16D63/006—Positive locking brakes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64F—GROUND OR AIRCRAFT-CARRIER-DECK INSTALLATIONS SPECIALLY ADAPTED FOR USE IN CONNECTION WITH AIRCRAFT; DESIGNING, MANUFACTURING, ASSEMBLING, CLEANING, MAINTAINING OR REPAIRING AIRCRAFT, NOT OTHERWISE PROVIDED FOR; HANDLING, TRANSPORTING, TESTING OR INSPECTING AIRCRAFT COMPONENTS, NOT OTHERWISE PROVIDED FOR
- B64F1/00—Ground or aircraft-carrier-deck installations
- B64F1/30—Ground or aircraft-carrier-deck installations for embarking or disembarking passengers
- B64F1/305—Bridges extending between terminal building and aircraft, e.g. telescopic, vertically adjustable
- B64F1/3055—Bridges extending between terminal building and aircraft, e.g. telescopic, vertically adjustable with hinged head interface between aircraft and passenger bridge
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- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01D—CONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
- E01D15/00—Movable or portable bridges; Floating bridges
- E01D15/12—Portable or sectional bridges
- E01D15/124—Folding or telescopic bridges; Bridges built up from folding or telescopic sections
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D63/00—Brakes not otherwise provided for; Brakes combining more than one of the types of groups F16D49/00 - F16D61/00
- F16D63/008—Brakes acting on a linearly moving member
Definitions
- the present disclosure relates to a movable tunnel braking system, and also relates to a passenger boarding bridge having the movable tunnel braking system.
- FIG. 1 is a schematic view of a passenger boarding bridge
- FIG. 2 is a principle schematic view of an existing passenger boarding bridge.
- the existing passenger boarding bridge generally includes three tunnels that are sleeve-connected with one another in turn.
- the three tunnels are a tunnel A 21 , a tunnel B 22 , and a tunnel C 23 , respectively.
- the tunnel A 21 is hinged to the rotunda 1 .
- the rotunda 1 is fixed on the ground by a column under the turntable 1 .
- the tunnel C 23 is connected to a lifting column 3 .
- the lifting column 3 is connected to a horizontal drive unit 4 .
- the horizontal drive unit 4 drives the tunnel C forward or backward.
- the tunnel B 22 is sleeved between the tunnel A 21 and the tunnel C 23 .
- a first movable pulley 221 and a second movable pulley 222 are fixed on the bottom of the tunnel B 22 .
- the retracting wire rope 51 has one end fixed to a tailing end of the tunnel A 21 , the other end fixed to a tailing end of the tunnel C 23 , and a center portion passing through the second movable pulley 222 .
- the tunnel A 21 , the tunnel B 22 , the tunnel C 23 , the retracting wire rope 51 and the second movable pulley 222 form one set of movable pulley mechanism.
- the tensile wire rope 52 has one end fixed to a leading end of the tunnel A 21 , the other end fixed to a tailing end of the tunnel C 23 , and the center portion passing through the first movable pulley 221 .
- the tunnel A 21 , the tunnel B 22 , the tunnel C 23 , the tensile wire rope 52 and the first movable pulley 221 form the other set of movable pulley mechanism. It is realized that the tunnel B 22 and the tunnel C 23 synchronous move through the two sets of movable pulley mechanisms at the three tunnels.
- the passenger boarding bridge may be used in the airport for passengers to board on the airplane. After the tunnel C 23 docks with an aircraft, the passenger can enter the passenger boarding bridge through the turntable 1 , then pass through the tunnel A 21 , the tunnel B 22 and the tunnel C 23 in turn, and finally enter the airplane.
- the passenger boarding bridge may also be installed on ferry ports for passengers to board on a ship.
- the passenger boarding bridge may also be called a boarding bridge or other names.
- the retracting wire rope 51 and the tensile wire rope 52 may be broken, and the passenger boarding bridge is not in a horizontal state under many circumstances, if the retracting wire rope 51 or the tensile wire rope 52 is broken, the tunnel B 22 will move uncontrolledly which results safety hazards. It is necessary to be able to brake the tunnel B 22 under the circumstance that the wire rope is broken, in order to ensure the safety of personnel in the tunnel.
- the existing tunnel braking system has a complicated structure and low reliability.
- An object of the present disclosure is to overcome the above-mentioned shortcomings of the prior art. It is provided with a movable tunnel braking system that may brake two tunnels adjacent to each other when the tensile wire rope or the retracting wire rope is broken.
- the movable passage braking system has a simple structure and high reliability.
- Another object of the present disclosure is to provide a passenger boarding bridge having the movable tunnel braking system.
- a movable tunnel braking system for a passenger boarding bridge.
- the passenger boarding bridge includes a plurality of tunnels that are sequentially sleeve-connected with one another, and a tensile wire rope and a retracting wire rope that are connected to the plurality of the tunnels.
- the movable tunnel braking system includes a brake plate, a brake pin and a triggering device.
- the brake plate is fixedly disposed at a first tunnel of the plurality of tunnels, and the brake plate is provided with a plurality of brake slots; the brake pin that is movably disposed at a second tunnel of the plurality of tunnels, which is sleeve-connected with the first tunnel and can be combined with the brake slot; and the triggering device includes a mechanical blocking portion, a linkage mechanism and a tensile spring, the mechanical blocking portion is fixedly disposed at the second tunnel; the linkage mechanism is movably disposed at the second tunnel, and is connected to one end of the tensile wire rope or the retracting wire rope, and the linkage mechanism abuts against the mechanical blocking portion under action of a tension of the tensile wire rope or the retracting wire rope; and the tensile spring that has two ends respectively connected to the linkage mechanism and the second tunnel, so that when the tensile wire rope or the retracting wire rope is broken, the linkage mechanism is driven to move and drives the brake pin to combine with the brake slot,
- the brake pin is hinged to the second tunnel; two brake pins and two triggering devices are provided; the two linkage mechanisms of the two triggering devices are connected to one end of the tensile wire rope and the retracting wire rope, respectively; and the two linkage mechanisms of the two triggering devices are connected to one of the brake pins, respectively.
- the brake pin is hinged to the second tunnel; the second tunnel is provided with a positioning spring that provides a pulling force for the brake pin to disconnect the brake pin from the brake slot;
- the triggering device is provided with two; the two linkage mechanisms of the two triggering devices are connected to one end of the tensile wire rope and the retracting wire rope, respectively; and the two linkage mechanisms of the two triggering devices are connected to the same brake pin.
- the linkage mechanism includes:
- first hinged seat that is fixedly disposed at the second tunnel
- a first hinged rod that is connected to the tensile wire rope or the retracting wire rope
- a second hinged rod that has one end hinged to the first hinged seat and the other end hinged to the first hinged rod and capable of abutting against the mechanical blocking portion, the tensile spring being connected to the second hinged rod;
- a third hinged rod having one end hinged to the first hinged seat
- the second hinged rod can be rotated by a certain angle to drive the third hinged rod to rotate, such that the third hinged rod drives the fourth hinged rod to move, and the fourth hinged rod drive the brake pin to combine with the brake slot.
- the certain angle is in a range of 5° to 30°.
- the linkage mechanism includes:
- a main hinged rod that has one end coaxially hinged with the brake pin and the other end in contact with the mechanical blocking portion, and the main hinged rod being connected to the tensile spring;
- a connecting bolt that has one end connected to the tensile wire rope or the retracting wire rope and the other end connected to the intermediate hinged shaft.
- the main hinged rod includes a body and a connecting handle disposed at one end of the body; the connecting handle is coaxially hinged with the brake pin; the body can be rotated by a certain angle to contact with the brake pin so as to drive the brake pin to be combined with the brake slot.
- the certain angle is in a range of 5° to 30°.
- the brake slot is a waist-shaped slot, a circular slot, a square slot, a trapezoidal slot or a V-shaped slot.
- the movable tunnel braking system further includes a travel switch for detecting whether the brake pin is combined with the brake slot.
- a passenger boarding bridge including the movable tunnel braking system.
- the passenger boarding bridge includes a plurality of tunnels that are sequentially sleeve-connected with one another, and a tensile wire rope and a retracting wire rope that are connected to the plurality of the tunnels.
- the movable tunnel braking system includes a brake plate, a brake pin and a triggering device.
- the brake plate is fixedly disposed at a first tunnel of the plurality of tunnels, and the brake plate is provided with a plurality of brake slots; the brake pin that is movably disposed at a second tunnel of the plurality of tunnels, which is sleeve-connected with the first tunnel and can be combined with the brake slot; and the triggering device includes a mechanical blocking portion, a linkage mechanism and a tensile spring, the mechanical blocking portion is fixedly disposed at the second tunnel; the linkage mechanism is movably disposed at the second tunnel, and is connected to one end of the tensile wire rope or the retracting wire rope, and the linkage mechanism abuts against the mechanical blocking portion under action of a tension of the tensile wire rope or the retracting wire rope; and the tensile spring that has two ends respectively connected to the linkage mechanism and the second tunnel, so that when the tensile wire rope or the retracting wire rope is broken, the linkage mechanism is driven to move and drives the brake pin to combine with the brake slot,
- the passenger boarding bridge has three tunnels.
- the movable tunnel braking system of the present disclosure brakes two adjacent tunnels of the passenger boarding bridge by a brake plate, a brake pin and a triggering device.
- the movable tunnel braking system has a simple and compact structure and is installed conveniently.
- the movable tunnel braking system of the present disclosure may be realized completely by means of the mechanical structure, due to extremely high action reliability, can brake the movable tunnel effectively when the tensile wire rope or the retracting wire rope is broken, thereby ensuring the safety of passenger.
- FIG. 1 is a schematic view of an existing passenger boarding bridge
- FIG. 2 is a principle schematic view of an existing passenger boarding bridge
- FIG. 3 is a schematic view schematic the bottom structure of a tunnel B in the present disclosure.
- FIG. 4 is a schematic view of a movable tunnel braking system according to the embodiment of the present disclosure.
- FIG. 5 is a schematic view showing the bottom structure of a tunnel C in the embodiment of the present invention.
- FIG. 6 is a schematic structural view of a main hinged rod in the embodiment of the present disclosure.
- FIG. 7 is a schematic view of the retracting wire rope being relaxed
- FIG. 8 is a schematic view of the retracting wire rope being broken
- FIG. 9 is a schematic view of the tensile wire rope being relaxed
- FIG. 10 is a schematic view of the tensile wire rope being broken.
- an embodiment of the present disclosure discloses a movable tunnel braking system.
- the movable tunnel braking system is used for a passenger boarding bridge shown in FIG. 1 and FIG. 2 , wherein the passenger boarding bridge includes a plurality of tunnels that are sequentially sleeve-connected with one another, and a tensile wire rope 52 and a retracting wire rope 51 that are connected to the plurality of tunnels.
- the movable tunnel braking system includes a brake plate 223 , a brake pin 67 , and a triggering device, wherein the brake plate 223 is fixedly disposed at a first tunnel, and the brake pin 67 is movably disposed at a second tunnel that is sleeve-connected with the first tunnel.
- the first tunnel is a tunnel B 22
- the second tunnel is a tunnel C 23
- the “first tunnel” and the “second tunnel” in this embodiment are merely used to indicate one of two tunnels that are adjacent and sleeve-connected with each other, but not limit the tunnel.
- the first tunnel may also represent the tunnel C 23 and the second tunnel is the tunnel B 22 .
- the number of tunnels of the passenger boarding bridge is not limited to two, but may also be three or more.
- the brake plate 223 is substantially an elongated strip-shaped steel sheet, on which a plurality of brake slots 224 are disposed.
- the structure of the brake slot 224 is substantially a waist-shaped hole.
- the structure of the brake slot 224 is merely exemplary, but not limit to the specific structure.
- the brake slot 224 may also be a circular slot, a square slot, a trapezoidal slot or a V-shaped slot and the other shapes.
- the brake pin 67 may be used to combine with the brake slot 224 at the brake plate 223 . That is to say, the brake pin 67 may be protruded into the brake slot 224 to combine with the brake slot 224 together, in this way, the relative movement between the first tunnel and the second tunnel may be restricted, so as to ensure the safety of people in the tunnel.
- the brake pin 67 may be triggered by a triggering device to perform the corresponding action of combining with the brake slot 224 .
- the specific action modes of the brake pin 67 are not limited.
- the brake pin 67 may be slidably disposed at the second tunnel, and may slide into the brake slot 224 .
- the brake pin 67 is hinged to the second tunnel, by rotating the brake pin 67 , a distal end of the brake pin 67 may enter into the brake slot 224 .
- the triggering device includes a mechanical blocking portion, a linkage mechanism, and a tensile spring.
- the mechanical blocking portion is fixedly disposed at the second tunnel.
- the linkage mechanism is movably disposed at the second tunnel, and connected to one end of the tensile wire rope 52 or the retracting wire rope 51 .
- the linkage mechanism abuts against the mechanical blocking portion under the action of a tensile force of the tensile wire rope 52 or the retracting wire rope 51 .
- the two ends of the tensile spring are respectively connected to the linkage mechanism and the second tunnel, so that when the tensile wire rope 52 or the retracting wire rope 51 is broken, the linkage mechanism is driven to move and drives the brake pin 67 to combine with the brake slot 224 , to brake the first tunnel and the second tunnel.
- the triggering device will be described in detail.
- the number of the brake pin 67 and the triggering device may be adjusted as needed.
- the brake pin 67 and the triggering device each may be configured in two, and the linkage mechanisms of the two triggering devices are respectively connected to the tensile wire rope 52 and the retracting wire rope 51 .
- the linkage mechanism of each of the triggering devices is connected to one of the brake pins 67 .
- the number of the brake pin 67 and the triggering device may be only one, so that the linkage mechanism of the triggering device is connected to the tensile wire rope 52 or the retracting wire rope 51 .
- One set of movable tunnel braking system may detect breakage of the tensile wire rope 52 or the retracting wire rope 51 .
- Two sets of the movable tunnel braking systems may be provided to detect the state of the tensile wire rope 52 and the retracting wire rope 51 .
- the number of the triggering devices is two.
- the linkage mechanisms of the two triggering devices are respectively connected to one end of the tensile wire rope 52 and the retracting wire rope 51 .
- the two linkage mechanisms are also connected to the same brake pin 67 .
- the tensile wire rope 52 and the retracting wire rope 51 may be detected, and may be broken by the action of one brake pin 67 , to improve reliability of the action while reducing the number of the parts.
- one second hinged seat 234 is disposed at the second tunnel, and the brake pin 67 is hinged on the second hinged seat 234 .
- a positioning spring 73 for providing a tension for the brake pin 67 is provided at the second tunnel, wherein a positioning stop plate 9 is provided on the second hinged seat 234 , a striking rod 671 is provided at the brake pin 67 , and the two ends of the positioning spring 73 are respectively connected to the striking rod 671 and the positioning stop plate 9 .
- the positioning spring 73 may disengage the brake pin 67 from the brake slot 224 , that is, under the action of the tension of the positioning spring 73 , the striking rod 671 is in contact with the positioning stop plate 9 , so that the brake pin 67 may be positioned at a place that is disengaged away from the brake slot 224 . In this place, the brake pin 67 does not affect the movement between the first tunnel and the second tunnel. Only when the tensile wire rope 52 or the retracting wire rope 51 is broken, the brake pin 67 will be driven by the triggering device to overcome the function of a tension force of the positioning spring 73 to combine with the brake slot 224 .
- the linkage mechanism presents two structures, wherein the linkage mechanism with a first structure is presented as follows: the linkage mechanism includes a first hinged seat 232 , a first hinged rod 61 , a second hinged rod 62 , a third hinged rod 63 , and a fourth hinged rod 64 .
- the first hinged seat 232 is fixedly disposed at the second tunnel.
- the first hinged rod 61 has one end connected to the tensile wire rope 52 or the retracting wire rope 51 , and the other end hinged to the second hinged rod 62 .
- the second hinged rod 62 has one end hinged to the first hinged seat 232 and the other end used to hinge to the first hinged rod 61 and abut against a mechanical blocking portion 231 .
- the third hinged rod 63 has one end hinged to the first hinged seat 232 . Both ends of the fourth hinged rod 64 are hinged to the third hinged rod 63 and the brake pin 67 , respectively.
- the second hinged rod 62 is connected to one end of a tensile spring 71 .
- the other end of the tensile spring 71 is connected to the second tunnel.
- the third hinged rod 63 may be driven to rotate to drive the fourth hinged rod 64 to move, and finally the fourth hinged rod 64 drives the brake pin 67 to combine with the brake slot 224 .
- the second hinged rod 62 rotates at a certain angle a of 5°, that is to say, when the second hinged rod 62 rotates with an angle less than 5°, the third hinged rod 63 is not rotated, and thereby avoiding false operation.
- the linkage mechanism with the first structure is used to connect the retracting wire rope 51 , but it should be noted that the linkage mechanism with the first structure may also be used to connect the tensile wire rope 52 .
- the linkage mechanism includes a main hinged rod 66 , an intermediate hinged shaft 663 , and a connecting bolt 65 .
- the main hinged rod 66 has one end that is coaxially hinged with the brake pin 67 , and the other end that is in contact with a mechanical blocking portion 233 .
- the main hinged rod 66 is also connected to a tensile spring 72 disposed at the second tunnel.
- the intermediate hinged shaft 663 is hinged to the main hinged rod 66 .
- the connecting bolt 65 has one end that is connected to the tensile wire rope 52 or the retracting wire rope 51 , and the other end that is connected to the intermediate hinged shaft 663 .
- the main hinged rod 66 includes a body 664 and a connecting handle 661 disposed at one end of the body 664 .
- the connecting handle 661 is coaxially hinged with the brake pin 67 .
- the body is rotated by a certain angle b to contact with the brake pin 67 so as to drive the brake pin 67 to combine with the brake slot 224 .
- a fixing cover 662 is also fixedly connected to the body.
- the intermediate hinged shaft 663 is hinged between the fixing cover 662 and the body.
- the main hinged rod 66 is rotated by a certain angle b of 5°, that is to say, when the main hinged rod 66 rotates with an angle less than 5°, the brake pin 67 is not rotated, and thereby avoiding false operation.
- the main hinged rod 66 of the second linkage mechanism is connected to the tensile wire rope 52 , however, it should be noted that the second linkage mechanism may also be used on the retracting wire rope 51 .
- the linkage mechanisms with the two structures as above mentioned may be used independently or together. In this embodiment, the first linkage mechanism and the second linkage mechanism are simultaneously used.
- the retracting wire rope 51 when the tensile wire rope 52 is in a tensioned state, the retracting wire rope 51 may be in a certain relaxed state under some working conditions, but the retracting wire rope 51 is not broken, and thereby does not need to brake.
- the tensile spring 71 may rotate the second hinged rod 62 , the rotational angle of the second hinged rod 62 does not exceed the range of the angle a, so that the second hinged rod 62 may not rotate the third hinged rod 63 , and thereby avoiding accidental combination between the brake pin 67 and the brake slot 224 on the brake plate 223 to ensures security.
- the tensile spring 71 drives the second hinged rod 62 to rotate beyond the range of the angle a, so that the second hinged rod 62 may drive the third hinged rod 63 to start rotating, and finally the brake pin 67 is combined together with the brake slot 224 at the brake plate 223 to brake the first tunnel and the second tunnel.
- the tensile wire rope 52 when the retracting wire rope 51 is in a tensioned state, the tensile wire rope 52 may be in a certain relaxed state under some operating conditions, but the tensile wire rope 52 is not broken and thus does not need to brake.
- the tensile spring 72 may rotate the main hinged rod 66 , the rotational angle of the main hinged rod 66 does not exceed the range of the angle b. Thereby, the main hinged rod 66 may not rotate the brake pin 67 , to avoid the accident combination of the brake pin 67 and the brake slot 224 , so as to ensure security.
- the tensile spring 72 drives the main hinged rod 66 to rotate beyond the range of the angle b, so that the main hinged rod 66 may start rotating the brake pin 67 , and finally the brake pin 67 and the brake slot 224 on the brake plate 223 are combined with each other, to brake the first tunnel and the second tunnel.
- a travel switch 8 may also be disposed at the second tunnel.
- the travel switch is used to detect whether the brake pin 67 is combined with the brake slot 224 or not.
- the brake pin 67 may just trigger the travel switch 8 .
- the travel switch 8 is triggered to generate a detection signal which can be transmitted to a control system of the passenger boarding bridge. After receiving the detection signal, the control system may stop movement of a lifting column and a horizontal drive unit.
- a braking process may be completely realized by means of a mechanical structure, without using any electrical component, to avoid unreliability of the electrical components.
- the electrical components only play an auxiliary function of transmitting detection signals to the control system of the passenger boarding bridge.
- the movable tunnel braking system has an extremely high reliability, and can be braked reliably even in the event of an unexpected power failure.
- the embodiment of the present disclosure further discloses a passenger boarding bridge having the movable tunnel braking system, which may have three or more tunnels.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Aviation & Aerospace Engineering (AREA)
- Braking Arrangements (AREA)
- Bridges Or Land Bridges (AREA)
- Refuge Islands, Traffic Blockers, Or Guard Fence (AREA)
Abstract
Description
Claims (12)
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201610810478.XA CN107792386B (en) | 2016-09-06 | 2016-09-06 | Active aisle braking system and boarding bridge |
CN201610810478 | 2016-09-06 | ||
CN201610810478.X | 2016-09-06 | ||
PCT/CN2017/081263 WO2018045757A1 (en) | 2016-09-06 | 2017-04-20 | Movable walkway braking system and passenger boarding bridge |
Publications (2)
Publication Number | Publication Date |
---|---|
US20200124120A1 US20200124120A1 (en) | 2020-04-23 |
US10724586B2 true US10724586B2 (en) | 2020-07-28 |
Family
ID=61530973
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US16/330,915 Active US10724586B2 (en) | 2016-09-06 | 2017-04-20 | Movable tunnel braking system and passenger boarding bridge |
Country Status (5)
Country | Link |
---|---|
US (1) | US10724586B2 (en) |
EP (1) | EP3511250B1 (en) |
CN (1) | CN107792386B (en) |
ES (1) | ES2907594T3 (en) |
WO (1) | WO2018045757A1 (en) |
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JP5759299B2 (en) | 2011-08-02 | 2015-08-05 | 新明和工業株式会社 | Boarding bridge |
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CN106428611A (en) | 2016-09-30 | 2017-02-22 | 美迪斯智能装备有限公司 | Auxiliary braking system for boarding bridge |
CN206141864U (en) | 2016-09-30 | 2017-05-03 | 美迪斯智能装备有限公司 | Boarding Bridge with Linkage Wire Rope Safety Brake |
-
2016
- 2016-09-06 CN CN201610810478.XA patent/CN107792386B/en active Active
-
2017
- 2017-04-20 WO PCT/CN2017/081263 patent/WO2018045757A1/en unknown
- 2017-04-20 ES ES17847931T patent/ES2907594T3/en active Active
- 2017-04-20 EP EP17847931.7A patent/EP3511250B1/en active Active
- 2017-04-20 US US16/330,915 patent/US10724586B2/en active Active
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US3693204A (en) * | 1970-09-24 | 1972-09-26 | Boothe Airside Services | Closure apparatus |
US3722017A (en) * | 1971-07-26 | 1973-03-27 | Gen Steel Ind Inc | Over-the-wing aircraft loading bridge |
US3859481A (en) * | 1973-10-29 | 1975-01-07 | Stephen B Sprague | Telescoping power support |
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ES2907594T3 (en) | 2022-04-25 |
EP3511250B1 (en) | 2021-12-01 |
EP3511250A4 (en) | 2020-05-27 |
CN107792386A (en) | 2018-03-13 |
EP3511250A1 (en) | 2019-07-17 |
WO2018045757A1 (en) | 2018-03-15 |
US20200124120A1 (en) | 2020-04-23 |
CN107792386B (en) | 2020-07-03 |
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